花粉管
花粉
根毛
生物
发芽
双受精
拟南芥
植物
细胞生物学
突变体
细胞质
有性生殖
叶尖生长
延伸率
人类受精
基因
授粉
解剖
遗传学
极限抗拉强度
冶金
材料科学
作者
Hongze Liao,Meng‐Meng Zhu,Hong‐Hui Cui,Xinyu Du,Yu Tang,Long‐Qing Chen,De Ye,Xueqin Zhang
摘要
In flowering plants, male gametes are delivered to female gametes for double fertilization through pollen tubes. Therefore, pollen tube growth is crucial for double fertilization. Despite its importance to sexual reproduction, genetic mechanisms of pollen tube growth remain poorly understood. In this study, we characterized the receptor-like cytoplasmic protein kinase (RLCK) gene, MARIS (MRI) that plays critical roles in pollen tube growth. MRI is preferentially expressed in pollen grains, pollen tubes and roots. Mutation in MRI by a Ds insertion led to a burst of pollen tubes after pollen germination. Pollen-rescue assay by pollen and pollen tube-specific expression of MRI in the mri-4 mutant showed that loss of MRI function also severely affected root hair elongation. MRI protein interacted with the protein kinase OXIDATIVE SIGNAL INDUCIBLE1 (OXI1) in the in vitro and in vivo assays, which functions in plant defence and root hair development, and was phosphorylated by OXI1 in vitro. Our results suggest that MRI plays important roles in pollen tube growth and may function in root hair elongation through interaction with OXI1.
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